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Titlebook: Excitonic and Photonic Processes in Materials; Jai Singh,Richard T. Williams Book 2015 Springer Science+Business Media Singapore 2015 DFT

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https://doi.org/10.1007/978-3-7091-8815-6in OSCs through light trapping effects. After a brief overview of basics of OSCs, the charge transport properties, different approaches including incorporating metal nanoparticles and surface plasmonic structures to enhancethe absorption in OSCs will be discussed. Apart from the encouraging results
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N. H. Fischer,E. J. Olivier,H. D. Fischerenergies is larger than in crystalline semiconductors. The application of the new time-dependent exciton-spin-orbit-photon interaction derived recently by the author has been reviewed for harvesting the radiative emission from triplet excitons, where the traditional perturbation approach cannot be a
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https://doi.org/10.1007/978-3-7091-8759-3ents and exciton diffusion lengths for singlet and triplet excitons, respectively. The newly derived interaction operator between charge transfer exciton and molecular vibration energy is used to understand the mechanism and derive the rate of dissociation of excitons into free charge carriers. The
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J. G. Buchanan,P. Crews,S. E. Taylortion landscape of electron tracks. Particular attention is paid to short-pulse laser experiments at Wake Forest University giving data and insight on the above phenomena complementary to more traditional scintillator experiments using gamma-ray or electron excitation. Numerical modeling of diffusion
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Springer Series in Materials Sciencehttp://image.papertrans.cn/e/image/318411.jpg
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Non-Macrocyclic Trichothecenes, Part 2 (,),hose of conventional semiconductors. With its unique electrical and optical properties, SrTiO. is a key material in oxide electronics. In this chapter, we discuss the optical properties and carrier recombination dynamics of SrTiO. bulk crystals. Electron-doped and strongly photoexcited SrTiO. crysta
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H. Achenbach,P. Bhattacharyya,U. Weission. An overview of photovoltaics and allied photonic architectures is presented including a synopsis of the relevant physics. A selected illustrative review of recent research results on the integration of wave-optic coupling nanostructures in silicon photovoltaics is given with an emphasis on the
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https://doi.org/10.1007/978-3-7091-8551-3ecause randomly twisted, regularly twisted, or planar conformations can be realized in its solid state. In this chapter, the relationship between its optical properties and the polymer conformation is discussed within the framework of the simple effective conjugation length model. The electronic str
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